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Tardigrades as a Potential Model Organism in Space Research

机译:缓步动物是空间研究中潜在的模式生物

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Exposure of living organisms to open space requires a high level of tolerance to desiccation, cold, and radiation. Among animals, only anhydrobiotic species can fulfill these requirements. The invertebrate phylum Tardigrada includes many anhydrobiotic species, which are adapted to survive in very dry or cold environmental conditions. As a likely by-product of the adaptations for desiccation and freezing, tardigrades also show a very high tolerance to a number of other, unnatural conditions, including exposure to ionizing radiation. This makes tardigrades an interesting candidate for experimental exposure to open space. This paper reviews the tolerances that make tardigrades suitable for astrobiological studies and the reported radiation tolerance in other anhydrobiotic animals. Several studies have shown that tardigrades can survive y-irradiation well above 1 kilogray, and desiccated and hydrated (active) tardigrades respond similarly to irradiation. Thus, tolerance is not restricted to the dry anhydrobiotic state, and I discuss the possible involvement of an efficient, but yet undocumented, mechanism for DNA repair. Other anhydrobiotic animals (Artetnia, Polypedium), when dessi-cated, show a higher tolerance to y-irradiation than hydrated animals, possibly due to the presence of high levels of the protective disaccharide trehalose in the dry state. Tardigrades and other anhydrobiotic animals provide a unique opportunity to study the effects of space exposure on metabolically inactive but vital metazoans.
机译:将生物暴露于开放空间需要对干燥,寒冷和辐射具有高度的耐受性。在动物中,只有水生生物物种可以满足这些要求。无脊椎动物门氏纲包括许多非水生生物种类,它们适于在非常干燥或寒冷的环境条件下生存。作为干燥和冷冻适应的一种可能的副产物,缓坡剂还表现出对许多其他非自然条件的极高耐受性,包括暴露于电离辐射下。这使得缓坡剂成为实验性暴露于开放空间的有趣候选物。本文回顾了使缓坡剂适合于天体生物学研究的耐受性,以及所报道的其他无水生动物的辐射耐受性。数项研究表明,缓凝剂在y射线照射下可以存活超过1千克汞柱,而干燥和水合(活性)的缓凝剂对辐照的反应相似。因此,耐受性不限于干燥的非水生生物状态,我讨论了一种有效的但尚未证明的DNA修复机制的可能参与。其他需要脱水的动物(Artetnia,Polypedium)比水合动物对y辐射的耐受性更高,这可能是由于在干燥状态下存在高含量的保护性二糖海藻糖引起的。缓坡动物和其他无水生物为研究空间暴露对代谢不活跃但至关重要的后生动物的影响提供了独特的机会。

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